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Results 201 - 210 of 253 for Austenitic stainless steels
  • Article - 20 Sep 2012
    Stainless steels are high-alloy steels which have high corrosion resistance compared to other steels due to the presence of large amounts of chromium. Based on their crystalline structure, they are...
  • Article - 20 Sep 2012
    Stainless steels are known as high-alloy steels. These steels contain good corrosion resistance in comparison with other steels because they contain larger amounts of chromium of about 10%.
  • Article - 1 Jun 2006
    The AZ61 alloy was subjected to hot compression at temperatures ranging from 523 K to 673 K, with strain rates of 0.001 ~ 1 s-1. Flow softening occurs at all temperatures and strain rates. This...
  • Article - 7 Nov 2001
    Suitable heat treatment can see this grade attain the highest hardness, strength and wear resistance of any stainless steel. This is due to the high carbon content. The composition is optimised for...
  • Article - 7 Nov 2001
    431 is the most corrosion resistant of the martensitic grades. It has excellent tensile and torque strengths and toughness. Consequently it is suited to bolts and shaft applications e.g. nuts and...
  • Article - 26 Oct 2001
    Grade 430 is a non-hardenable grade that combines good corrosion resistance, formability and useful mechanical properties. It is resistant to nitric acid making it useful in the chemical industry, but...
  • Article - 23 Oct 2001
    420 is a higher carbon version of grade 410. When fully hardened it is the hardest of this family of stainless steels. Hardness is optimised at the expense of other properties. Typical applications...
  • Article - 15 Oct 2024
    Discover how the ARL X900 XRF spectrometer is utilized in accurate steel analysis, learn how it's features aid in precision, reliability and more.
  • Article - 23 Oct 2024
    Isothermal Desorption Spectroscopy or ITDS is a promising technique with applications in many hydrogen-related applications.
  • Article - 10 Feb 2022
    This article focuses on the effect of particle size on the additive manufacturing process.

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